Romero Angel H, Rodríguez Jonathan, García-Marchan Yael, Leañez Jacques, Serrano-Martín Xenón, López Simón E
Laboratorio de Química Medicinal y Heterociclos, Departamento de Química, Universidad Simón Bolívar, Valle de Sartenejas, Baruta, Caracas 1080-A, Venezuela.
Laboratorio de Biología y Quimioterapia de Parasitosis Tropicales, Área de Salud, Instituto de Estudios Avanzados (IDEA), Caracas, Venezuela.
Bioorg Chem. 2017 Jun;72:51-56. doi: 10.1016/j.bioorg.2017.03.008. Epub 2017 Mar 21.
A series of twenty phthalazinyl-hydrazones were synthesized and tested as potential anti-Trypanosoma cruzi agents. The phthalazines containing 5-nitroheteroaryl moiety 3l and 3m displayed an excellent in vitro antitrypanosomal profile, exhibiting low micromolar EC values against proliferative epimastigote of T. cruzi and minimal toxicity toward Vero cells. These derivatives were more potent than the reference drug benznidazole against the epimastigote stage of the parasite. Structure-property analysis indicates that the highly conjugated 5-nitroheteroaryl moiety connected to the phthalazin scaffold play an important role in the antichagasic activity of these phthalazines. The decrease on the mitochondrial dehydrogenase activity and significant ROS production found for the parasites treated with 3l and 3m suggest that both nitro-derivatives can act through an oxidative stress mechanism.
合成了一系列20种酞嗪基腙,并作为潜在的抗克氏锥虫药物进行了测试。含有5-硝基杂芳基部分的酞嗪3l和3m表现出优异的体外抗锥虫活性,对克氏锥虫增殖型前鞭毛体的半数有效浓度(EC)值低至微摩尔级别,且对Vero细胞的毒性极小。这些衍生物在抗寄生虫前鞭毛体阶段比参考药物苯硝唑更有效。结构-性质分析表明,连接到酞嗪骨架上的高度共轭5-硝基杂芳基部分在这些酞嗪的抗恰加斯病活性中起重要作用。用3l和3m处理的寄生虫线粒体脱氢酶活性降低以及产生大量活性氧(ROS),这表明这两种硝基衍生物都可以通过氧化应激机制发挥作用。